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- W4256144054 abstract "Organic Permeable Base Transistors (OPBT) with C60 as a small-molecule semiconductor show impressive characteristics due to their short vertical channel in the range of 100 nm. Current densities exceeding 10 A/cm and large on/off ratios have recently been published for samples processed on glass. [1] The outstanding frequency behavior that allows for operation in the MHz-regime at a low operation voltage makes OPBTs attractive for applications in wireless communication while allowing simple processing in a single vacuum evaporation tool without the need for expensive structuring like m range lithography. Our current work aims at processing these devices on flexible plastic substrates. Transistor and circuit operation in real application scenarios require air-stability, which necessitates encapsulation. We employ AlOx thin-films from Atomic Layer Deposition (ALD) to protect OPBTs from external degradation to facilitate long-term stable, flexible, organic electronics. The easy structuring and the high-current capability of our transistors will enable versatile applications like for instance wireless communication, flexible displays or sensor applications with a technology that allows for low cost production. [1] Klinger, M. P.; Fischer, A.; Kaschura, F.; Scholz, R.; Lssem, B.; Kheradmand-Boroujeni, B.; Ellinger, F.; Kasemann, D. & Leo, K. Advanced Materials, 2015, 27, 77347739" @default.
- W4256144054 created "2022-05-12" @default.
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- W4256144054 date "2016-09-13" @default.
- W4256144054 modified "2023-10-18" @default.
- W4256144054 title "Organic Permeable Base Transistors for Flexible Electronic Circuits" @default.
- W4256144054 doi "https://doi.org/10.14293/p2199-8442.1.sop-phys.pirzbg.v1" @default.
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